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Biomedical subjects

E L Gottfried

Publications and source records attributed to E L Gottfried.

At least 19 recordsLinked to original sources

Utility of the three-part leukocyte differential count.

The utility of the automated three-part leukocyte differential count was evaluated in an acute care hospital setting. The manual method was specified in 92 of 223 (41%) requests for differentials on one day. For the others, 79 three-part differentials (60%) were completed; 19 (15%) were rejected for histogram abnormalities ("R-flags") or could not be computed; and 33 (25%) were rejected for out-of-range values that were later verified by slide review. The automated method missed 4 of 39 (10%) band elevations and 2 of 2 (100%) cases of eosinophilia reported on manual differentials, but those results had no apparent influence on patient management. In 98 cases of septicemia, automated and manual methods showed similar overall sensitivity (87% and 83%, respectively). Selectively combined with a qualitative slide review, the three-part differential was applicable to 84% of all specimens submitted for a differential count, with acceptable sensitivity and accuracy and substantial savings in personnel time.

Evaluation Studies as Topic

Increased erythrocyte osmotic fragility in pregnancy.

An unexpected increase in erythrocyte osmotic fragility during pregnancy in two healthy women prompted a study of the effects of pregnancy on osmotic fragility. The incubated glycerol lysis time, a rapid, sensitive measure of osmotic fragility, was determined in 100 pregnant women and 50 nonpregnant control subjects. Twenty-two of the pregnant women (22%) showed abnormal results when compared to normal nonpregnant women (p less than 0.0005). Increased erythrocyte fragility was observed primarily in the last trimester of pregnancy. Twenty-one of 65 women in the last trimester (32.3%) had abnormal incubated glycerol lysis time values, but only one of 34 (2.9%) showed increased fragility during early pregnancy. Physiologic shifts in erythrocyte osmotic fragility may create a problem in the diagnosis of hereditary spherocytosis during the last trimester of pregnancy.

Adult

The effects of inaccurate blood sample volume on prothrombin time (PT) and activated partial thromboplastin time (aPTT).

The results of determinations of the prothrombin time (PT) and the activated partial thromboplastin time (aPTT) are frequently used to assess hemostatic function. Accurate results for these laboratory tests depend on many variables, one of which is the ratio of plasma to anticoagulant. We studied 12 patients and 4 normal subjects to determine the effects of sample volume on PT and aPTT. We conclude that underfilling may produce profound effects, particularly on the aPTT. In contrast, overfilling rarely affects the results. The greatest effects of sample volume were observed in specimens in which the true PT or aPTT was elevated. A normal PT or aPTT result on any specimen, regardless of sample volume, strongly suggests that the true value is normal.

Adult

Unusual intracytoplasmic inclusions in acute myeloblastic leukemia.

Unusual intracytoplasmic inclusions within early granulocyte precursor cells from a patient with acute myeloblastic leukemia (AML) are described. Based upon their staining characteristics and electron- and light-microscopic appearance, the inclusions are distinctly different from any previously described. The inclusions display a variety of shapes, including rectangles, squares, circles, ovals, and irregular, globular forms. Most of the inclusions are refractile and crystal-like. The possible composition of these inclusions is discussed. They are compared with inclusions previously described within leukemic and granulocytic cells.

Aged

Reliable estimation of hemoglobin A2 concentration by electrophoresis with densitometry.

Elevated hemoglobin A2 (Hb A2) levels can be identified conveniently by densitometry after electrophoresis on cellulose acetate strips. Because a recent report questioned the accuracy of this technic, the method was re-evaluated by paired comparison with microcolumn chromatography. Analysis of 100 patient specimens showed high correlation (r = +0.84), but an average Hb A2 concentration 0.7% higher by densitometry than by chromatography (P less than 0.001). With upper limits set at 4.5%, and 3.8%, respectively, results were divided into "normal" and "high" for each method. Concordant results were obtained in 97 of the 100 cases (82 normal, 15 high). Another densitometer of improved design was used for paired analysis of 50 additional specimens, 25 normal and 25 with beta-thalassemia trait. The two groups were well separated by both procedures, and Hb A2 levels were similar (r = +0.92, P greater than 0.6). This study demonstrates that it is possible, with carefully controlled technics and properly calibrated instruments, to use electrophoresis with densitometry as a reliable means of identifying abnormal Hb A2 levels.

Child

The diagnostic significance of a prolonged erythrocytic glycerol lysis time (GLT50).

The predictive value of a prolonged glycerol lysis time (GLT50) was assessed by analysis of case records of 100 consecutive subjects with values greater than 73 seconds (normal = 26--73 seconds) reported by the clinical laboratory of The New York Hospital. There were 72 cases of hemoglobinopathy: 65 thalassemia trait, four sickle-thalassemia, and one each of Hb D-thalassemia, sickle-C disease, and sickle-cell anemia. Nine of the remaining subjects had iron-deficiency anemia, three had chronic renal disease, and seven had miscellaneous disorders. Four subjects were apparently normal, and in five cases there was insufficient information for a diagnosis. Of 78 patients who had both a prolonged GLT50 and microcytosis, 67 (86%) had thalassemia trait and seven (9%) had iron-deficiency anemia. In 74 patients with GLT50 greater than 100 seconds, thalassemia trait was found 16 times as often as uncomplicated iron-deficiency anemia. All 31 subjects with GLT50 greater than 180 seconds had hemoglobinopahy. A prolonged GLT50 strongly suggests thalassemia trait, especially when greater than 100 seconds or associated with microcytosis.

Anemia, Hypochromic

Electronic platelet counts with the Coulter counter. Reassessment of a correction factor.

Platelet counts are determined on the Coulter electronic counter by counting the diluted platelet-rich plasma obtained by sedimentation or centrifugation of whole blood. In calculating the whole-blood platelet count, an empirical correction factor for platelet-free plasma trapped by sedimented erythrocytes has been recommended, and a widely-distributed circular slide rule calculator incorporates the correction factor. In this study, visual and electronic platelet counts were compared in 100 specimens with counts ranging from 10 to 1,100 X 10(3) per mul and hematocrits ranging from 17.5 to 48.5%. Platelet-rich plasma samples prepared by a centrifugation method (Plateletfuge) gave machine counts in close agreement with those of samples prepared by sedimentation. Whole-blood platelet counts determined with the circular calculator were consistently lower than visual counts, with an average difference of -17%. The electronic counts were recalculated after elimination of the correction factor, and agreement then improved to an average difference of only +1.6%. The correction factor for trapped platelet-free plasma leads to erroneously low values and should not be used.

Blood Cell Count